Loss of soluble guanylate cyclase, the major nitric oxide receptor, leads to moyamoya and achalasia.
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Loss of soluble guanylate cyclase, the major nitric oxide receptor, leads to moyamoya and achalasia.
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2014-06-19
相关数据集
Supplementary Material for: Determinants of Basal Collaterals in Moyamoya Disease: Clinical and Genetic Factors
Background/Aims: To enable the diagnosis of moyamoya disease (MMD), detection of distal internal carotid artery stenosis and hazy network of basal collaterals (BCs) are required. This study aimed at e
NIAID Data Ecosystem60
Transcriptome-wide Analysis of Intracranial Artery of Moyamoya Disease Showing Up-regulation of Inflammatory Response with Increased Expression of TLR2 and SYK, and Down-Regulation of Collagen Formation with Decreased Expression of COL15A1 [STA]. Transcriptome-wide Analysis of Intracranial Artery of Moyamoya Disease Showing Up-regulation of Inflammatory Response with Increased Expression of TLR2 and SYK, and Down-Regulation of Collagen Formation with Decreased Expression of COL15A1 [STA]
During superficial temporal artery (STA)-middle cerebral artery (MCA) anastomoses, micro-samples of both MCA and STA from the patients with MMD (n=4) and internal carotid artery aneurysm (IA) (n=4) we
NIAID Data Ecosystem20
Gut Microbiota in Patients With Moyamoya Disease
Moyamoya disease (MMD) is a rare cerebrovascular disorder, it is a major cause of stroke in children and young adults in Japan, Korea, and China, but its pathogenesis is not yet clear. Dysbiosis of gu
NIAID Data Ecosystem10
Data_Sheet_1_The relationship between hemoglobin and triglycerides in moyamoya disease: A cross-sectional study.pdf
Hemoglobin (Hb) and lipid metabolism are critical in the pathophysiology of moyamoya disease (MMD), and Hb and triglycerides (TGs) both play roles in the development of cerebrovascular illness. Howeve
NIAID Data Ecosystem40
Table_1_Pathophysiology of Vascular Stenosis and Remodeling in Moyamoya Disease.DOCX
Moyamoya disease (MMD) and moyamoya syndrome (MMS) are progressive vascular pathologies unique to the cerebrovasculature that are important causes of stroke in both children and adults. The natural hi
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